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Item 987654321/108693
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https://ir.lib.ncu.edu.tw/handle/987654321/108693
題名:
Effective anodic oxidation of naproxen by platinum nanoparticles coated FTO glass
作者:
秦靜如
;
Chin, Ching-Ju Monica
;
Chen, Tsan-Yao
;
Lee, Menshan
;
Chang, Chiung-Fen
;
Liu, Yu-Ting
;
Kuo, Yu-Tsun
貢獻者:
工學院環境工程研究所
關鍵詞:
activation energy
;
Anodes
;
Anodizing
;
Applied sciences
;
Chemical engineering
;
CNTs
;
Degradation
;
Density
;
Electrochemical oxidation
;
Electrochemistry
;
Electrodes
;
Exact sciences and technology
;
Fluorine - chemistry
;
Glass
;
humic acids
;
Humic Substances
;
hydroxyl radicals
;
Intermediates
;
Kinetics
;
mineralization
;
Nanoparticles
;
Naproxen
;
Naproxen - analysis
;
Naproxen - isolation & purification
;
oxidation
;
Oxidation-Reduction
;
Platinum
;
Platinum - chemistry
;
Platinum nanoparticles
;
Pollution
;
propionic acid
;
Reactors
;
Sintering, pelletization, granulation
;
Solid-solid systems
;
Tin Compounds - chemistry
;
Water Pollutants, Chemical - analysis
;
Water Pollutants, Chemical - isolation & purification
;
Water Purification - instrumentation
;
Water Purification - methods
;
X-ray diffraction
日期:
2014-07-30
上傳時間:
2026-04-23 15:02:20 (UTC+8)
出版者:
Elsevier;Kidlington: Elsevier B.V
摘要:
摘要: [Display omitted] •Anodes of Pt-FTO and Pt/MWCNTs-FTO possessed dual functions.•MWCNTs can prevent the surface of PtNPs from sintering and provide a greater reaction sites density.•Electrochemical processes for both anodes were controlled by diffusion.•Two major intermediates are determined. This study investigated applications of the electrochemical anodic oxidation process with Pt-FTO and Pt/MWCNTs-FTO glasses as anodes on the treatment of one of the most important emerging contaminants, naproxen. The anodes used in this study have been synthesized using commercial FTO, MWCNTs and Pt nanoparticles (PtNP). XRD patterns of Pt nanoparticles coated on FTO and MWCNTs revealed that MWCNTs can prevent the surface of PtNPs from sintering and thus provide a greater reaction sites density to interact with naproxen, which have also been confirmed by higher degradation and mineralization efficiencies in the Pt/MWCNTs-FTO system. Results from the CV analysis showed that the Pt-FTO and Pt/MWCNTs-FTO electrodes possessed dual functions of decreasing activation energy and interactions between hydroxyl radicals to effectively degrade naproxen. The lower the solution pH value, the better the degradation efficiency. The existence of humic acid indeed inhibited the degradation ability of naproxen due to the competitions in the multiple-component system. The electrochemical degradation processes were controlled by diffusion mechanism and two major intermediates of 2-acetyl-6-methoxynaphthalene and 2-(6-Hydroxy-2-naphthyl)propanoic acid were identified. This study has successfully demonstrated new, easy, flexible and effective anodic materials which can be feasibly applied to the electrochemical oxidation of naproxen.
其他題名: J Hazard Mater
出版者: Kidlington: Elsevier B.V
出版日期: 2014-07-30
出處: Journal of hazardous materials, 2014-07, Vol.277, p.110-119
版權: 2014 Elsevier B.V.
版權: 2015 INIST-CNRS
版權: Copyright © 2014 Elsevier B.V. All rights reserved.
識別號: ISSN: 0304-3894
識別號: ISSN: 1873-3336
識別號: EISSN: 1873-3336
識別號: DOI: 10.1016/j.jhazmat.2014.02.034
識別號: PMID: 24656855
識別號: CODEN: JHMAD9
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[環境工程研究所 ] 期刊論文
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